root/kernel/time/test_udelay.c

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DEFINITIONS

This source file includes following definitions.
  1. udelay_test_single
  2. udelay_test_show
  3. udelay_test_open
  4. udelay_test_write
  5. udelay_test_init
  6. udelay_test_exit

   1 // SPDX-License-Identifier: GPL-2.0
   2 /*
   3  * udelay() test kernel module
   4  *
   5  * Test is executed by writing and reading to /sys/kernel/debug/udelay_test
   6  * Tests are configured by writing: USECS ITERATIONS
   7  * Tests are executed by reading from the same file.
   8  * Specifying usecs of 0 or negative values will run multiples tests.
   9  *
  10  * Copyright (C) 2014 Google, Inc.
  11  */
  12 
  13 #include <linux/debugfs.h>
  14 #include <linux/delay.h>
  15 #include <linux/ktime.h>
  16 #include <linux/module.h>
  17 #include <linux/uaccess.h>
  18 
  19 #define DEFAULT_ITERATIONS 100
  20 
  21 #define DEBUGFS_FILENAME "udelay_test"
  22 
  23 static DEFINE_MUTEX(udelay_test_lock);
  24 static struct dentry *udelay_test_debugfs_file;
  25 static int udelay_test_usecs;
  26 static int udelay_test_iterations = DEFAULT_ITERATIONS;
  27 
  28 static int udelay_test_single(struct seq_file *s, int usecs, uint32_t iters)
  29 {
  30         int min = 0, max = 0, fail_count = 0;
  31         uint64_t sum = 0;
  32         uint64_t avg;
  33         int i;
  34         /* Allow udelay to be up to 0.5% fast */
  35         int allowed_error_ns = usecs * 5;
  36 
  37         for (i = 0; i < iters; ++i) {
  38                 s64 kt1, kt2;
  39                 int time_passed;
  40 
  41                 kt1 = ktime_get_ns();
  42                 udelay(usecs);
  43                 kt2 = ktime_get_ns();
  44                 time_passed = kt2 - kt1;
  45 
  46                 if (i == 0 || time_passed < min)
  47                         min = time_passed;
  48                 if (i == 0 || time_passed > max)
  49                         max = time_passed;
  50                 if ((time_passed + allowed_error_ns) / 1000 < usecs)
  51                         ++fail_count;
  52                 WARN_ON(time_passed < 0);
  53                 sum += time_passed;
  54         }
  55 
  56         avg = sum;
  57         do_div(avg, iters);
  58         seq_printf(s, "%d usecs x %d: exp=%d allowed=%d min=%d avg=%lld max=%d",
  59                         usecs, iters, usecs * 1000,
  60                         (usecs * 1000) - allowed_error_ns, min, avg, max);
  61         if (fail_count)
  62                 seq_printf(s, " FAIL=%d", fail_count);
  63         seq_puts(s, "\n");
  64 
  65         return 0;
  66 }
  67 
  68 static int udelay_test_show(struct seq_file *s, void *v)
  69 {
  70         int usecs;
  71         int iters;
  72         int ret = 0;
  73 
  74         mutex_lock(&udelay_test_lock);
  75         usecs = udelay_test_usecs;
  76         iters = udelay_test_iterations;
  77         mutex_unlock(&udelay_test_lock);
  78 
  79         if (usecs > 0 && iters > 0) {
  80                 return udelay_test_single(s, usecs, iters);
  81         } else if (usecs == 0) {
  82                 struct timespec64 ts;
  83 
  84                 ktime_get_ts64(&ts);
  85                 seq_printf(s, "udelay() test (lpj=%ld kt=%lld.%09ld)\n",
  86                                 loops_per_jiffy, (s64)ts.tv_sec, ts.tv_nsec);
  87                 seq_puts(s, "usage:\n");
  88                 seq_puts(s, "echo USECS [ITERS] > " DEBUGFS_FILENAME "\n");
  89                 seq_puts(s, "cat " DEBUGFS_FILENAME "\n");
  90         }
  91 
  92         return ret;
  93 }
  94 
  95 static int udelay_test_open(struct inode *inode, struct file *file)
  96 {
  97         return single_open(file, udelay_test_show, inode->i_private);
  98 }
  99 
 100 static ssize_t udelay_test_write(struct file *file, const char __user *buf,
 101                 size_t count, loff_t *pos)
 102 {
 103         char lbuf[32];
 104         int ret;
 105         int usecs;
 106         int iters;
 107 
 108         if (count >= sizeof(lbuf))
 109                 return -EINVAL;
 110 
 111         if (copy_from_user(lbuf, buf, count))
 112                 return -EFAULT;
 113         lbuf[count] = '\0';
 114 
 115         ret = sscanf(lbuf, "%d %d", &usecs, &iters);
 116         if (ret < 1)
 117                 return -EINVAL;
 118         else if (ret < 2)
 119                 iters = DEFAULT_ITERATIONS;
 120 
 121         mutex_lock(&udelay_test_lock);
 122         udelay_test_usecs = usecs;
 123         udelay_test_iterations = iters;
 124         mutex_unlock(&udelay_test_lock);
 125 
 126         return count;
 127 }
 128 
 129 static const struct file_operations udelay_test_debugfs_ops = {
 130         .owner = THIS_MODULE,
 131         .open = udelay_test_open,
 132         .read = seq_read,
 133         .write = udelay_test_write,
 134         .llseek = seq_lseek,
 135         .release = single_release,
 136 };
 137 
 138 static int __init udelay_test_init(void)
 139 {
 140         mutex_lock(&udelay_test_lock);
 141         udelay_test_debugfs_file = debugfs_create_file(DEBUGFS_FILENAME,
 142                         S_IRUSR, NULL, NULL, &udelay_test_debugfs_ops);
 143         mutex_unlock(&udelay_test_lock);
 144 
 145         return 0;
 146 }
 147 
 148 module_init(udelay_test_init);
 149 
 150 static void __exit udelay_test_exit(void)
 151 {
 152         mutex_lock(&udelay_test_lock);
 153         debugfs_remove(udelay_test_debugfs_file);
 154         mutex_unlock(&udelay_test_lock);
 155 }
 156 
 157 module_exit(udelay_test_exit);
 158 
 159 MODULE_AUTHOR("David Riley <davidriley@chromium.org>");
 160 MODULE_LICENSE("GPL");

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